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Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:
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Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Dec 16, 2015

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Page 1: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Robert Butler

Jenda Johnson

Kip Ault

The Earth & Plate TectonicsSlide show prepared by:

Page 2: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

How do continents grow?

Why do earthquakes

occur in nearly every US state?

How does deformation

occurring in one place affect

another place?

The continent is a complex mosiac of all geologic history

Page 3: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Earth vs. Egg

Earth radius = 6370 kmLithosphere (plate) thickness = 100 km

What % of Earth radius is lithosphere?

Egg radius = 0.75 inchEgg shell thickness = 0.015 inch

What % of egg radius is shell?

~2%

Page 4: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

0.016 % of the Earth’s radius is lithosphere.

0.026 % of the egg’s radius is shell.

Page 5: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:
Page 6: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Convection is like a boiling pot. Heated soup rises to the surface, spreads and begins to cool, and then sinks back to the bottom of the pot where it is reheated and rises again.

Plate tectonics

Plates are driven by the cooling of the Earth. Gravity provides additional force to move plates.

Modified from USGS Graphics

Page 7: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

There are a dozen large lithospheric plates (smaller plates not shown).Some plates have continents; some don’t.

All are in motion.

Tectonic Plates

.

Page 8: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Question: What evidence is there for these plate boundaries?

Page 9: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

There are thousands of small earthquakes every day “Strong” earthquakes (~M7) occur once a month. >M8 occur about

once/year.

Seismicity & Distribution of Earthquakes

Where are the deepest earthquakes?

For earthquakes of the past 2 weeks, go to http://www.iris.edu/seismon/

Page 10: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Notice that the earthquakes coincide with plate boundaries, and the deepest quakes (blue) are in subduction zones.

Question: Where would you expect to see volcanoes?

Modified from USGS Graphics

World Seismicity & Plate Tectonics

Create your own maps at http://www.iris.edu/quakes/maps.htm

Page 11: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Modified from USGS Graphics

This map shows that the locations of subaerial (above sea level) volcanoes correlate with earthquake locations.

Seismicity Tectonics and Volcanoes

Page 12: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

How fast are the plates moving?

Plates move 1-10 centimeters per year (≈ rate of fingernail growth).

Tectonic Plates

Modified from USGS Graphics

Fingernail growth plotted: http://jclahr.com/science/earth_science/thumbnail/index.html

Page 13: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

What are the tectonic plates?

AKA: Lithospheric plate• Is the ~100-km-thick surface of the Earth;

• contains crust and part of the upper mantle;• is rigid and brittle; and• fractures to produce earthquakes.

See video links in notes

Page 14: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

What is the asthenosphere?

The asthenosphere is• the hotter upper mantle below the lithospheric plate; • a viscoelastic solid (NOT liquid!!); and• can flow like silly putty.

USG

S G

raph

ics

See video links in notes

Page 15: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Deforming Earth’s Crust

Types of stress: Extension, Compression, Shear

Extension makes faults and regional thinning. (Ex., Basin & Range.)

Compression makes faults and folds. (Ex., Rocky Mountains.)

Shearing displaces layers horizontally and can result in strike-slip faulting. (Ex., San Andreas Fault, California.)

Undeformed beds: no stress applied.

Page 16: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Three Basic Types of Plate Boundaries

Divergent

Convergent

Transform

USGS Graphics

Using hands to show relative motion

Page 17: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Three Basic Types of Plate Boundaries

Divergent

Convergent

Transform

USGS Graphics See video and animation links in notes

Page 18: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Divergent Plate Boundaries New crust is generated as the plates pull apart; Occur on ocean floors and continental interiors;

Earthquakes are shallow and small.

Fast-spreading RidgeExample: East Pacific Rise (moving apart at about 15 cm/year)

Slow-spreading RidgeExamples: Atlantic mid-ocean ridge Basin and Range, USAAfrican Rift ValleyNorthern Red Sea

Page 19: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Transform Plate Boundaries Lithosphere is neither produced nor destroyed as the

plates slide horizontally past each other.

Strike-slip fault—San Andreas Fault, California

Transform fault—a strike-slip fault between two spreading ridges allows the two plates to move apart.

Next slide: What is stress?

Page 20: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

http://www.iris.edu/hq/programs/education_and_outreach/animations/27

Beijing>Powerpoints>003 Gulf of CAlif_EarthquakesAndTectonics.mp4

Page 21: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Convergent Plate Boundaries

Ocean /Ocean convergence (Marianas)

Ocean /Continent convergence (Cascades)

Continent/Continent Collision (Himalayas)

Plates push together. A) The denser plate subducts, or B) two continental plates crunch together and form high mountains.

Next slide: Why and where would earthquakes occur in convergent boundaries?

Page 22: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Young Subducting Plate

Page 23: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Old Subducting Plate

Page 24: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Earthquakes along Convergent Zones with Subducting Oceanic Lithosphere

Shallow earthquakes: The most destructive

of these occur between the plates on the plate

boundary.

Intermediate and Deep: Occur only within the subducting oceanic

lithosphere.

See animation & video links in notes

Page 25: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Island Arc Subduction Zone

Page 26: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Obduction?

Page 27: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Island Arc Subduction Zone

Page 28: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:
Page 29: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

http://www.iris.edu/hq/programs/education_and_outreach/animations/11

003 IRIS Convergent Zone Ocean-Continent

Page 30: Robert Butler Jenda Johnson Kip Ault The Earth & Plate Tectonics Slide show prepared by:

Tibetan Plateau

Himalayas

Indian Plate

Eurasian Plate

Sichuan 7.8 Crustal Quake (Overthrust Fault) 2008